Project Delivery|Two UAV Experimental Platforms Delivered to School of Aerospace Engineering, Tsinghua University

Sep. 20, 2026

In the golden September, two sets of scientific research and teaching equipment, the LY-EDU-F4 Educational Quadrotor Test Bench and the LY-MICRO High-Precision Power System Test Bench, have been successfully delivered to the laboratory of the School of Aerospace Engineering, Tsinghua University. They will support teaching and scientific-research innovation for UAV-related disciplines in higher-imageeducation institutions.


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Upon arrival at the laboratory, our technical team carried out full-scale on-site implementation, including unpacking, transportation, positioning & installation, hardware wiring and overall machine commissioning. Working together with faculty and students from the school, the team completed power-on inspection and functional verification. Detailed instructions on equipment operation, experimental procedures and safety precautions were provided to ensure both experimental platforms can be quickly put into classroom teaching and research projects.

LY-EDU-F4 Educational Quadrotor Test Bench

Tailored for university UAV flight-control teaching scenarios, the LY-EDU-F4 serves as a comprehensive experimental platform for quadrotor control-algorithm research. It supports various teaching experiments such as attitude solution, hover control, controller parameter tuning and fault simulation.

The complete system consists of a quadrotor mechanical bench, drive units and upper-computer control software. Equipped with a safety protective cage, it balances experimental performance and hands-on operational safety. It is well-suited for undergraduate courses, student science & innovation competitions, algorithm simimageulation verification and other application scenarios.

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LY-MICRO High-Precision Power System Test Bench

The LY-MICRO High-Precision Power System Test Bench focuses on low-level UAV power-performance testing. It accurately measures core parameters of motor-propeller assemblies, including thrust, torque, rotational speed, power consumption and efficiency.


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This platform is widely applied in power-scheme comparison and selection, motor performance calibration, and propeller optimization analysis. It generates reliable measured data to support research on overall aircraft design and provides solid hardimageware support for iterative optimization of power systems.


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The two platforms complement each other: the LY-MICRO focuses on characterization of power components, while the LY-EDU-F4 targets verification of flight-control algorithms for complete vehicles. Together they form a full experimental workflow ranging from power-unit testing to full-vehicle control development. They deliver comprehensive hardware experimental conditions for UAV-related classroom teaching, undergraduate innovation projects and postgraduate research topics.

Ranging from component-level performance testing to full-vehicle control development, the two platforms will continuously facilitate experimental research conducted by faculty and students, empowering the cultivation of innovative talents in the aerospace field.

WingFlying provides professional UAV testing and educational platforms for universities, research institutes and engineering teams. From propulsion performance testing to flight-control experiments, we support customized test solutions that help accelerate UAV research, teaching and system development.


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